Coronary Artery Disease Clinical Trial
Official title:
Relevance of Invasively Measured Axial Plaque Stress and Wall Shear Stress Using Invasive Coronary Imaging and Hemodynamic Data
In this study, the investigators sought to evaluate the feasibility of estimating external
hemodynamic stress acting plaque with the use of invasively measured hemodynamic data from
pressure wire pullback tracing.
In addition, the investigators will also evaluate detailed plaque geometry and vulnerability
using optical coherence tomography along with the hemodynamic stress.
It has been well known that mechanism of acute coronary syndrome is plaque rupture and
occlusion of coronary artery by this plaque rupture. Although current risk assessment for
plaque rupture have mainly focused on evaluation of plaque vulnerability. However, according
to the general mechanism of material failure, plaque rupture occurs whenever the external
hemodynamic stress exceeds the durability of the plaque.
Recently, we evaluated the axial plaque stress, which is axial component of total traction
acting on the plaque, and showed that the axial plaque stress possess significantly higher
magnitude than previously known wall shear stress.
However, the axial plaque stress in our previous research was measured with computational
flow dynamics analysis using coronary artery model from coronary CT angiography.
In this study, we sought to evaluate the feasibility of estimating external hemodynamic
stress acting plaque with the use of invasively measured hemodynamic data from pressure wire
pullback tracing.
In addition, we will also evaluate detailed plaque geometry and vulnerability using optical
coherence tomography along with the hemodynamic stress.
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Observational Model: Case-Only, Time Perspective: Prospective
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